Synthesis and characterization of mechanically flexible and tough cellulose nanocrystals–polyacrylamide nanocomposite hydrogels

被引:7
作者
Jun Yang
Chun-Rui Han
Jiu-Fang Duan
Ming-Guo Ma
Xue-Ming Zhang
Feng Xu
Run-Cang Sun
机构
[1] Beijing Forestry University,Institute of Biomass Chemistry and Technology
[2] Beijing Forestry University,College of Materials Science and Technology
来源
Cellulose | 2013年 / 20卷
关键词
Hydrogel; Nanocomposite; Cellulose nanocrystal; Polyacrylamide; Strength;
D O I
暂无
中图分类号
学科分类号
摘要
The unique combinations of hard and soft components with core/shell structures were proposed to synthesize high strength nanocomposite hydrogels. The elastomeric hydrogels containing rod-like cellulose nanocrystals (CNCs) core and polyacrylamide shell were made from aqueous solutions via free radical polymerization in the absence of chemical cross-links. The obtained hydrogels possessed greater tensile strength and elongation ratio when compared with chemically cross-linked counterparts. Oscillatory shear experiments indicated that CNCs interacted with polymer matrix via both chemical and physical interactions and contributed to the rubbery elasticity of the hydrogels. The nanocomposite hydrogels were more viscous than the chemical hydrogels, suggesting the addition of CNC led to the increase of energy dissipating and viscoelastic properties. The network structure model was proposed and it suggested that the high extensibilities and fracture stresses were related to the well-defined network structures with low cross-linking density and lack of noncovalent interactions among polymer chains, which may promote the rearrangements of network structure at high deformations.
引用
收藏
页码:227 / 237
页数:10
相关论文
共 152 条
  • [1] Abbott A(2010)Self-reinforced cellulose nanocomposites Cellulose 17 779-791
  • [2] Bismarck A(2002)Interaction of silane coupling agents with cellulose Langmuir 18 3203-3208
  • [3] Abdelmouleh M(2011)Examination of the theories of rubber elasticity using an ideal polymer network Macromolecules 44 5817-5821
  • [4] Boufi S(2010)Nano-hybrid self-crosslinked PDMA/silica hydrogels Soft Matter 6 3619-3631
  • [5] Salah A(2012)Synthetically simple, highly resilient hydrogels Biomacromolecules 13 584-588
  • [6] Belgacem MN(2012)Gel-nanocomposites: materials with promising applications Soft Matter 8 2348-2365
  • [7] Gandini A(2012)Nanocomposites based on poly(acrylamide-co-acrylate) and cellulose nanowhiskers Eur Polym J 48 454-463
  • [8] Akagi Y(2011)Highly extensible, tough, and elastomeric nanocomposite hydrogels from poly(ethylene glycol) and hydroxyapatite nanoparticles Biomacromolecules 12 1641-1650
  • [9] Katashima T(2003)Double-network hydrogels with extremely high mechanical strength Adv Mater 15 1155-1158
  • [10] Katsumoto Y(2010)Cellulose nanocrystals: chemistry, self-assembly, and applications Chem Rev 110 3479-3500